A convenient covalent functionalization approach and nanopatterning method of graphite and graphene is developed. In contrast to expectations, electrochemically activated dediazotization of a mixture of two aryl diazonium compounds in aqueous media leads to a spatially inhomogeneous functionalization of graphitic surfaces, creating covalently modified surfaces with quasi-uniform spaced islands of pristine graphite or graphene, coined nanocorrals. Cyclic voltammetry and chronoamperometry approaches are compared. The average diameter (45–130 nm) and surface density (20–125 corrals/μm2) of these nanocorrals are tunable. These chemically modified nanostructured graphitic (CMNG) surfaces are characterized by atomic force microscopy, scanning tun...
The increase demand on novel and multifunctional materials has focused the attention on two-dimensio...
Resumen del trabajo presentado al Symposium on Surface Science (3S), celebrado en St. Christoph am A...
The functionalization of carbon nanostructures by diazonium chemistry is a versatile strategy to obt...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
Highly oriented pyrolytic graphite (HOPG) can be covalently grafted with aryl radicals generated via...
Nanocorrals with different size, shape, and orientation are created on covalently modified highly or...
Covalent functionalization of graphene is highly sought after, not only in view of the potential app...
Nanocorrals with different size, shape, and orientation are created on covalently modified highly or...
An approach for nanoscale covalent functionalization of graphite surfaces employing self-assembled m...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
A network of self-assembled polystyrene beads was employed as a lithographic mask during covalent fu...
Nanocorrals with different size, shape, and orientation are created on covalently modified highly or...
The increase demand on novel and multifunctional materials has focused the attention on two-dimensio...
Resumen del trabajo presentado al Symposium on Surface Science (3S), celebrado en St. Christoph am A...
The functionalization of carbon nanostructures by diazonium chemistry is a versatile strategy to obt...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
Highly oriented pyrolytic graphite (HOPG) can be covalently grafted with aryl radicals generated via...
Nanocorrals with different size, shape, and orientation are created on covalently modified highly or...
Covalent functionalization of graphene is highly sought after, not only in view of the potential app...
Nanocorrals with different size, shape, and orientation are created on covalently modified highly or...
An approach for nanoscale covalent functionalization of graphite surfaces employing self-assembled m...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
A network of self-assembled polystyrene beads was employed as a lithographic mask during covalent fu...
Nanocorrals with different size, shape, and orientation are created on covalently modified highly or...
The increase demand on novel and multifunctional materials has focused the attention on two-dimensio...
Resumen del trabajo presentado al Symposium on Surface Science (3S), celebrado en St. Christoph am A...
The functionalization of carbon nanostructures by diazonium chemistry is a versatile strategy to obt...